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    • 1. 发明授权
    • Method, system and device for calibrating a magnetic field sensor
    • 用于校准磁场传感器的方法,系统和装置
    • US07119533B2
    • 2006-10-10
    • US11109819
    • 2005-04-20
    • Yasuhiro TamuraMasahito Ito
    • Yasuhiro TamuraMasahito Ito
    • G01R35/00G01R33/02
    • G01R33/0206G01C17/38G01C25/00G01R35/005
    • A control device 200 calibrates a magnetic-field sensor 100 by computation. A computation unit 210 calculates the magnetic-field intensity based upon the outputs of X-axis, Y-axis, and Z-axis magnetic-field detection devices of the magnetic-field sensor 100. Such calculation is performed for four or more different points. The calculation is performed such that at least one point is not positioned on a plane including the other points. The computation unit 210 converts the outputs from the X-axis, Y-axis, and Z-axis magnetic-field detection devices of the magnetic-field sensor 100 into three-dimensional spatial coordinate points. Then, the computation unit 210 creates a sphere on which the four or more coordinate points thus obtained are positioned. The coordinate point of the center of the sphere thus created represents the magnetic-field offset. The interfering magnetic-field components in the X-axis, Y-axis, and Z-axis directions thus obtained are subtracted from the outputs of the X-axis, Y-axis, and Z-axis magnetic-field detection devices of the magnetic sensor 100, whereby calibration is made.
    • 控制装置200通过计算来校准磁场传感器100。 计算单元210基于磁场传感器100的X轴,Y轴和Z轴磁场检测装置的输出来计算磁场强度。 对四个以上的不同点进行这样的计算。 进行计算,使得至少一个点不位于包括其他点的平面上。 计算单元210将来自磁场传感器100的X轴,Y轴和Z轴磁场检测装置的输出转换为三维空间坐标点。 然后,运算部210生成由此得到的四个以上坐标点所在的球体。 由此产生的球的中心的坐标点代表磁场偏移。 这样得到的X轴,Y轴,Z轴方向的干涉磁场成分从磁性的X轴,Y轴,Z轴磁场检测装置的输出中减去 传感器100,由此进行校准。
    • 2. 发明申请
    • Control method of controlling magnetic-field sensor, control device, and mobile terminal device
    • 控制磁场传感器,控制装置和移动终端装置的控制方法
    • US20060066295A1
    • 2006-03-30
    • US11109819
    • 2005-04-20
    • Yasuhiro TamuraMasahito Ito
    • Yasuhiro TamuraMasahito Ito
    • G01R35/00
    • G01R33/0206G01C17/38G01C25/00G01R35/005
    • A control device 200 calibrates a magnetic-field sensor 100 by computation. A computation unit 210 calculates the magnetic-field intensity based upon the outputs of X-axis, Y-axis, and Z-axis magnetic-field detection devices of the magnetic-field sensor 100. Such calculation is performed for four or more different points. The calculation is performed such that at least one point is not positioned on a plane including the other points. The computation unit 210 converts the outputs from the X-axis, Y-axis, and Z-axis magnetic-field detection devices of the magnetic-field sensor 100 into three-dimensional spatial coordinate points. Then, the computation unit 210 creates a sphere on which the four or more coordinate points thus obtained are positioned. The coordinate point of the center of the sphere thus created represents the magnetic-field offset. The interfering magnetic-field components in the X-axis, Y-axis, and Z-axis directions thus obtained are subtracted from the outputs of the X-axis, Y-axis, and Z-axis magnetic-field detection devices of the magnetic sensor 100, whereby calibration is made.
    • 控制装置200通过计算来校准磁场传感器100。 计算单元210基于磁场传感器100的X轴,Y轴和Z轴磁场检测装置的输出来计算磁场强度。 对四个以上的不同点进行这样的计算。 进行计算,使得至少一个点不位于包括其他点的平面上。 计算单元210将来自磁场传感器100的X轴,Y轴和Z轴磁场检测装置的输出转换为三维空间坐标点。 然后,运算部210生成由此得到的四个以上坐标点所在的球体。 由此产生的球体中心的坐标点代表磁场偏移。 这样得到的X轴,Y轴,Z轴方向的干涉磁场成分从磁性的X轴,Y轴,Z轴磁场检测装置的输出中减去 传感器100,由此进行校准。
    • 4. 发明申请
    • High-Performance Liquid Chromatograph Apparatus and Method for Feeding Liquid to High-Performance Liquid Chromatograph Apparatus
    • 高效液相色谱仪和高效液相色谱仪送液的方法
    • US20120312081A1
    • 2012-12-13
    • US13574838
    • 2011-02-02
    • Hiroshi SuzukiMasahito ItoHroaki Nakagawa
    • Hiroshi SuzukiMasahito ItoHroaki Nakagawa
    • G01N30/84
    • G01N30/8693G01N30/22G01N30/34
    • A high-performance liquid chromatograph apparatus of the present invention can obtain a similar separation effect as that obtained in a constant velocity gradient elution method and shorten a measuring time. When a data processor (13) generates a converted constant pressure gradient program based on a trace of past pressure values, a pressure value trace file stored in a pressure value trace storage unit (13a) is selected and displayed on a display and a pressure value is set. A constant pressure gradient program converting unit (13b) converts a constant velocity gradient program stored in a constant velocity gradient program storage unit (13c) to the constant pressure gradient program and numerals according to the converted constant pressure gradient program are displayed. A liquid feed part (5, 6) of a liquid feed pump (4) is controlled via a flow velocity setting unit (13d) and a mixing ratio setting unit (13e) according to the constant pressure gradient program displayed on the display.
    • 本发明的高效液相色谱仪可以得到与恒定速度梯度洗脱法相同的分离效果,缩短测定时间。 当数据处理器(13)基于过去的压力值的轨迹生成转换的恒压梯度程序时,选择存储在压力值跟踪存储单元(13a)中的压力值跟踪文件并将其显示在显示器上,并且压力值 被设置。 恒压梯度程序转换单元(13b)将存储在恒速梯度程序存储单元(13c)中的恒速度梯度程序转换为恒压梯度程序,并显示根据转换的恒压梯度程序的数字。 通过显示在显示器上的恒定压力梯度程序,通过流速设定单元(13d)和混合比设定单元(13e)来控制液体供给泵(4)的液体供给部分(5,6)。
    • 5. 发明申请
    • WAY OF METHOD TRANSFER OF LIQUID CHROMATOGRAPH AND LIQUID CHROMATOGRAPH SYSTEM
    • 方法转移液相色谱和液相色谱系统的方法
    • US20120222470A1
    • 2012-09-06
    • US13472322
    • 2012-05-15
    • Takaaki SuzukiMasato FukudaMasahito Ito
    • Takaaki SuzukiMasato FukudaMasahito Ito
    • G01N30/02
    • G01N30/8665G01N30/16G01N30/28G01N30/52G01N30/8658G01N30/8693G01N2030/027
    • Provided is a liquid chromatograph system and method configured to accurately obtain measurements by minimizing deviations in measurements due to a transfer from one measurement method to another measurement method. An aspect of the system and method includes minimizing deviations in measurements when a measurement method from a measurement system of a liquid chromatograph is transferred to measurement system under high pressure and high velocity. Such a transfer includes deviations due to differences in analysis conditions. The present subject matter uses a dwell volume value so as to minimize a deviation of measurement result due to methods before and after transfer. Another aspect includes calculating a correction value when there is a deviation in the measurement result, and automatically reflecting the correction value for the method transfer.
    • 提供了一种液相色谱系统和方法,其被配置为通过使由于从一种测量方法转移到另一种测量方法的测量中的偏差最小化来精确地获得测量。 该系统和方法的一个方面包括当来自液相色谱仪的测量系统的测量方法在高压和高速下传递到测量系统时,测量的偏差最小化。 这种转移包括由于分析条件的差异导致的偏差。 本主题使用停留体积值,以便最小化由于传送之前和之后的方法导致的测量结果的偏差。 另一方面包括当测量结果存在偏差时计算校正值,并自动反映方法传送的校正值。
    • 7. 发明授权
    • Way of method transfer of liquid chromatograph and liquid chromatograph system
    • 液相色谱仪和液相色谱系统的方法转移方式
    • US08205485B2
    • 2012-06-26
    • US12470164
    • 2009-05-21
    • Takaaki SuzukiMasato FukudaMasahito Ito
    • Takaaki SuzukiMasato FukudaMasahito Ito
    • G01N30/00
    • G01N30/8665G01N30/16G01N30/28G01N30/52G01N30/8658G01N30/8693G01N2030/027
    • Provided is a liquid chromatograph system and method configured to accurately obtain measurements by minimizing deviations in measurements due to a transfer from one measurement method to another measurement method. An aspect of the system and method includes minimizing deviations in measurements when a measurement method from a measurement system of a liquid chromatograph is transferred to measurement system under high pressure and high velocity. Such a transfer includes deviations due to differences in analysis conditions. The present subject matter uses a dwell volume value so as to minimize a deviation of measurement result due to methods before and after transfer. Another aspect includes calculating a correction value when there is a deviation in the measurement result, and automatically reflecting the correction value for the method transfer.
    • 提供了一种液相色谱系统和方法,其被配置为通过使由于从一种测量方法转移到另一种测量方法的测量中的偏差最小化来精确地获得测量。 该系统和方法的一个方面包括当来自液相色谱仪的测量系统的测量方法在高压和高速下传递到测量系统时,测量的偏差最小化。 这种转移包括由于分析条件的差异导致的偏差。 本主题使用停留体积值,以便最小化由于传送之前和之后的方法导致的测量结果的偏差。 另一方面包括当测量结果存在偏差时计算校正值,并自动反映方法传送的校正值。
    • 9. 发明申请
    • METHOD AND APPARATUS FOR CHROMATOGRAPHIC DATA PROCESSING
    • 用于色谱数据处理的方法和装置
    • US20100057379A1
    • 2010-03-04
    • US12611181
    • 2009-11-03
    • Masahito ItoKisaburo Deguchi
    • Masahito ItoKisaburo Deguchi
    • G06F19/00G01N31/00G06F17/18
    • G01N30/8624G01N30/8631G01N30/8637G01N30/8641
    • A chromatographic analyzer is provided for facilitating curve fitting by means of the linear least-square method for a chromatogram that contains a plurality of overlapping peaks. The present invention is characterized by a chromatographic data processor for executing data processing of a chromatogram obtained by separating a sample to be measured using a column and detecting the separated sample, wherein fitting processing is executed to each peak in an arbitrary time region having the plurality of peaks of the chromatogram starting from the front side of the time region or from the back side of the time region, and the processed peaks are subtracted from the chromatogram in the time region so that the plurality of peaks in the chromatogram can be separated from one another. Thus, the plurality of overlapping peaks, particularly three or more overlapping peaks in the chromatogram can be easily separated from one another only by defining some setting conditions.
    • 提供了一种色谱分析仪,用于利用包含多个重叠峰的色谱图的线性最小二乘法促进曲线拟合。 本发明的特征在于一种色谱数据处理器,用于执行通过使用色谱柱分离待测样品并检测分离的样品而获得的色谱图的数据处理,其中对具有多个样品的任意时间区域中的每个峰值执行拟合处理 从时间区域的前侧或时间区域的背面开始的色谱图的峰值,并且在时间区域中从色谱图中减去处理的峰,使得色谱图中的多个峰可以从 另一个。 因此,仅通过限定一些设定条件,可以容易地将色谱图中的多个重叠峰,特别是三个或更多个重叠峰相互分离。